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Freeze fracturing of elastic porous media: a mathematical model

机译:弹性多孔介质的冻裂:数学模型

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摘要

We present a mathematical model of the fracturing of water-saturated rocks and other porous materials in cold climates. Ice growing inside porous rocks causes large pressures to develop that can significantly damage the rock. We study the growth of ice inside a penny-shaped cavity in a water-saturated porous rock and the consequent fracturing of the medium. Premelting of the ice against the rock, which results in thin films of unfrozen water forming between the ice and the rock, is one of the dominant processes of rock fracturing. We find that the fracture toughness of the rock, the size of pre-existing faults and the undercooling of the environment are the main parameters determining the susceptibility of a medium to fracturing. We also explore the dependence of the growth rates on the permeability and elasticity of the medium. Thin and fast-fracturing cracks are found for many types of rocks. We consider how the growth rate can be limited by the existence of pore ice, which decreases the permeability of a medium, and propose an expression for the effective ‘frozen’ permeability.
机译:我们提出了寒冷气候下水饱和岩石和其他多孔材料破裂的数学模型。在多孔岩石内部生长的冰会产生很大的压力,这会严重破坏岩石。我们研究了水饱和多孔岩石中一分钱形空腔内冰的生长以及介质的破裂。冰在岩石上的预融化,导致冰和岩石之间形成未冻结的水薄膜,是岩石破裂的主要过程之一。我们发现,岩石的断裂韧性,既有断层的大小和环境的过冷是决定介质对压裂敏感性的主要参数。我们还探讨了增长率对介质渗透性和弹性的依赖性。在许多类型的岩石中都发现了薄而快的裂缝。我们考虑了孔隙冰的存在如何限制增长率,从而降低了介质的渗透率,并提出了有效的“冻结”渗透率的表达式。

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